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迈向对大量溶剂化阴离子态的数值高效描述。

Toward a numerically efficient description of bulk-solvated anionic states.

作者信息

Kiataki Matheus B, Coutinho Kaline, Varella Márcio T do N

机构信息

Instituto de Física, Universidade de São Paulo, Rua do Matão 1731, 05508-090 São Paulo, Brazil.

出版信息

J Chem Phys. 2024 Jul 21;161(3). doi: 10.1063/5.0203247.

Abstract

We investigate the vertical electron attachment energy (VAE) of 1-methyl-4-nitroimidazole, a model radiosensitizer, employing quantum mechanics/molecular mechanics (QM/MM) and QM/polarized continuum (QM/PCM) solvation models. We considered the solvent-excluded surface (QM/PCM-SES) and Van der Waals (QM/PCM-VDW) cavities within the PCM framework, the electrostatic embedding QM/MM (EE-QM/MM) model, and the self-consistent sequential QM/MM polarizable electrostatic embedding (scPEE-S-QM/MM) model. Due to slow VAE convergence concerning the number of QM solvent molecules, full QM calculations prove inefficient. Ensemble averages in these calculations do not align with VAEs computed for the representative solute-solvent configuration. QM/MM and QM/PCM calculations show agreement with each other for sufficiently large QM regions, although the QM/PCM-VDW model exhibits artifacts linked to the cavity. QM/MM models demonstrate good agreement between ensemble averages and VAEs calculated with the representative configuration. Notably, the VAE computed with the scPEE-S-QM/MM model achieves faster convergence concerning the number of QM water molecules compared to the EE-QM/MM model, attributed to enhanced efficiency from MM charge polarization in the scPEE-S-QM/MM approach. This emphasizes the importance of QM/classical models with accurate solute-solvent and solvent-solvent mutual polarization for obtaining converged VAEs at a reasonable computational cost. The full-QM approach is very inefficient, while the microsolvation model is inaccurate. Computational savings in QM/MM models result from electrostatic embedding and the representative configuration, with the scPEE-S-QM/MM approach emerging as an efficient tool for describing bulk-solvated anions within the QM/MM framework. Its potential extends to improving transient anion state descriptions in biomolecules and radiosensitizers, especially given the frequent employment of microsolvation models.

摘要

我们采用量子力学/分子力学(QM/MM)和量子力学/极化连续介质(QM/PCM)溶剂化模型,研究了一种典型的放射增敏剂1-甲基-4-硝基咪唑的垂直电子附着能(VAE)。我们考虑了PCM框架内的溶剂排除表面(QM/PCM-SES)和范德华(QM/PCM-VDW)空穴、静电嵌入QM/MM(EE-QM/MM)模型以及自洽顺序QM/MM可极化静电嵌入(scPEE-S-QM/MM)模型。由于VAE关于QM溶剂分子数量的收敛缓慢,全QM计算效率低下。这些计算中的系综平均值与为代表性溶质-溶剂构型计算的VAE不一致。对于足够大的QM区域,QM/MM和QM/PCM计算结果相互吻合,尽管QM/PCM-VDW模型存在与空穴相关的伪影。QM/MM模型在系综平均值和用代表性构型计算的VAE之间表现出良好的一致性。值得注意的是,与EE-QM/MM模型相比,用scPEE-S-QM/MM模型计算的VAE在QM水分子数量方面收敛更快,这归因于scPEE-S-QM/MM方法中MM电荷极化提高了效率。这强调了具有精确溶质-溶剂和溶剂-溶剂相互极化的QM/经典模型对于以合理计算成本获得收敛VAE的重要性。全QM方法效率非常低,而微溶剂化模型不准确。QM/MM模型的计算节省源于静电嵌入和代表性构型,scPEE-S-QM/MM方法成为在QM/MM框架内描述大量溶剂化阴离子的有效工具。其潜力扩展到改善生物分子和放射增敏剂中瞬态阴离子状态的描述,特别是考虑到微溶剂化模型的频繁使用。

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